ANALYSIS OF THE CARRYING CAPACITY OF URBAN DRAINAGE DIMENSIONS

Awliya Tribhuwana, Fathur Rohman, Ohan Farhan
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Abstract

The rain that fell in the city of Cirebon, especially the drainage on Jalan Pemuda, could not accommodate and drain the water so that it could create puddles on the roads and surrounding areas. Hourly rain intensity, planned flow rate and channel cross-sectional dimensions are the first steps for flood prevention. Hydrological analysis is used to calculate the discharge capacity of the drainage plan. The results were then analyzed the dimensions of the channel, the drainage ability to accommodate the falling rainwater where Qs is bigger than Qp. the channel discharge has not been able to accommodate the Q plan in the channel so that there will be a runoff of 17.759%. So to anticipate runoff, it is necessary to have a channel improvement plan of 33.477%. In addition to channel improvement solutions, arrange and define the boundaries of water storage areas by measuring and mapping boundaries and issuing regulations that prohibit or limit the construction of buildings that can reduce the ability of areas to store and absorb rainwater by referring to the basic building coefficient (KDB) permitted as stated in the RT/RW.
城市排水承载力维度分析
西雷本市的雨水,特别是贾兰佩姆达的排水系统,无法容纳和排水,因此可能在道路和周围地区造成水坑。每小时降雨强度、计划流量和河道断面尺寸是防洪的第一步。利用水文分析方法,计算了排水方案的泄流量。然后分析了通道的尺寸,以及Qs大于Qp时的排水能力。河道流量已不能适应河道中的Q计划,因此将有17.759%的径流。因此,要预测径流,必须有33.477%的渠道改善计划。除了渠道改善解决方案外,通过测量和绘制边界来安排和定义储水区域的边界,并根据RT/RW中允许的基本建筑系数(KDB)颁布法规,禁止或限制建造可能降低区域储存和吸收雨水能力的建筑物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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